CN217845158U - Wind-solar system monitor - Google Patents

Wind-solar system monitor Download PDF

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Publication number
CN217845158U
CN217845158U CN202222135862.8U CN202222135862U CN217845158U CN 217845158 U CN217845158 U CN 217845158U CN 202222135862 U CN202222135862 U CN 202222135862U CN 217845158 U CN217845158 U CN 217845158U
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China
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base
wind
monitor
module
energy module
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CN202222135862.8U
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Chinese (zh)
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邹理文
柳丽玲
林苏娥
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Hunan Tengfa New Energy Co ltd
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Hunan Tengfa New Energy Co ltd
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Priority to CN202222135862.8U priority Critical patent/CN217845158U/en
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Abstract

The utility model is suitable for a monitor technical field, a wind optical system monitor, including the monitor base, monitor base both sides are equipped with the ventilation hole, the cross section in ventilation hole is parallelogram, the inside mounting groove that is equipped with of monitor base, be equipped with control module in the mounting groove of monitor base, control module's magnetism inhales the slide rail groove clearance fit in mounting groove in sliding door and the monitor base, be equipped with wind energy module on the monitor base, wind energy module's wind energy fixed base is fixed at monitor base upside, wind energy module next door is equipped with the light energy module, light energy module's light energy fixed base is fixed on the monitor base, because the light energy module of this equipment is equipped with rotating electrical machines, in daily work, can be according to the angle of sunshine angle regulation photovoltaic board, light utilization rate has been improved, and this equipment is equipped with the wind energy module, when overcast and rainy, can continue to provide the energy for equipment, so this equipment solves the problem of the unable normal work of monitor under the not enough or the wind-force condition effectively.

Description

Wind-solar system monitor
Technical Field
The utility model is suitable for a monitor technical field especially relates to a wind optical system monitor.
Background
With the rapid development of monitoring technology, monitors are increasingly applied to slope deformation monitoring. The monitoring devices need to be powered to work normally, however, most of the existing monitoring devices are powered through a base or a photovoltaic panel. Because the monitoring devices are generally arranged in remote places, circuits are laid according to the positions of the monitoring devices when power is supplied through a base, and the monitoring devices are troublesome to implement. And the mode of supplying power through the photovoltaic board meets continuous cloudy day or rainy day and the not enough area of illumination, will lead to monitoring devices outage condition, will stop work, can't play the effect of monitoring, has restricted monitoring devices's normal use, to above condition, we carry out technical innovation on the basis of current product, provide a wind optical system monitor.
SUMMERY OF THE UTILITY MODEL
The utility model provides a wind optical system monitor aims at solving the unstable problem of traditional monitor power supply.
The utility model discloses a realize like this, a wind optical system monitor, it constitutes including the monitor base, monitor base both sides are equipped with the ventilation hole, the cross section in ventilation hole is parallelogram, the inside mounting groove that is equipped with of monitor base, be equipped with control module in the mounting groove of monitor base, control module's magnetism inhale the push-and-pull door with slide rail groove clearance fit in the mounting groove in the monitor base, be equipped with wind energy module on the monitor base, wind energy module's wind energy fixed baseplate is fixed monitor base upside, wind energy module next door is equipped with the light energy module, the light energy fixed baseplate of light energy module is fixed on the monitor base.
Furthermore, the magnetic suction sliding door of the control module is provided with a transparent glass window, the magnetic suction sliding door is provided with a moving groove, and the magnetic suction sliding door is fixed in a magnetic suction mode.
Furthermore, a charging controller of the control module is fixed in the mounting groove of the monitor base, an LED display screen, control keys and an indicator lamp are arranged on the charging controller, a storage battery is arranged beside the monitor base, and an inverter is arranged beside the storage battery.
Furthermore, a lifting cylinder is arranged on the wind energy fixing base of the wind energy module, and a reinforcing rod is arranged between a fixing seat of the lifting cylinder and the wind energy fixing base for connection.
Furthermore, a rotary tray is arranged on a telescopic seat of the lifting cylinder, a mounting seat is arranged on the rotary tray, a rotary fan sheet is arranged on the mounting seat, and a tail rudder is arranged at the other end of the mounting seat.
Furthermore, an assembly rod is arranged on the light energy fixing base of the light energy module, a reinforcing rod is arranged between the assembly rod and the light energy fixing base, a control box support is arranged on the assembly rod, and a control box is arranged on the control box support.
Furthermore, the assembly rod is provided with a large motor support, a rotating motor is arranged in the large motor support, a rotating tray is arranged on the rotating motor, a forced centering device, a GNSS antenna and a communication module are arranged on the rotating tray, a protective shell is arranged on the rotating tray, and a visual window is arranged on the protective shell.
Furthermore, be equipped with the photovoltaic board support on the rotation tray, photovoltaic board support inboard is equipped with the photovoltaic board, the photovoltaic board pass through the dwang with the rotation jogged joint of photovoltaic board support, the photovoltaic board support outside is equipped with accommodate motor, accommodate motor with the dwang power connection of photovoltaic board.
About implementing the utility model discloses a beneficial technological effect does: because the light energy module of this equipment is equipped with the rotating electrical machines, when daily work, can improve the light utilization ratio according to the angle of sunshine angle modulation photovoltaic board, and this equipment is equipped with the wind energy module, when rainy day, can continue to provide the energy for equipment, so the unable normal problem of working of monitor under the not enough or wind-force not enough condition of illumination is solved effectively to this equipment.
Drawings
FIG. 1 is a structural view of the present invention;
fig. 2 is a front view of the present invention;
fig. 3 is a top view of the present invention;
fig. 4 is a right side view of the present invention;
fig. 5 is a left side view of the present invention;
fig. 6 is a partially enlarged view of a in fig. 1.
In the figure: 1. a monitor base; 2. a vent hole; 3. a control module; 4. the sliding door is magnetically attracted; 5. a wind energy module; 6. a wind energy fixed base; 7. a light energy module; 8. a light energy fixing base; 9. a transparent glass window; 10. a charge controller; 11. a battery; 12. an inverter; 13. a lifting cylinder; 14. rotating the tray; 15. a mounting base; 16. rotating the fan blade; 17. a tail rudder; 18. assembling a rod; 19. a control box bracket; 20. a control box; 21. a large motor support; 22. a rotating electric machine; 23. rotating the tray; 24. a protective shell; 25. a photovoltaic panel support; 26. a photovoltaic panel; 27. the motor is regulated.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more clear, the present invention will be further described in detail with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are for purposes of illustration only and are not intended to limit the invention.
It should be noted that the structures of the charge controller 10, the battery 11 and the inverter 12 are conventional technologies, and are common knowledge of those skilled in the art, and therefore will not be described herein again.
Referring to fig. 1-6, the utility model relates to a wind optical system monitor, it constitutes including monitor base 1, monitor base 1 both sides are equipped with ventilation hole 2, the cross section in ventilation hole 2 is parallelogram, when guaranteeing the equipment heat dissipation, can prevent that equipment from soaking, monitor base 1 inside is equipped with the mounting groove, be equipped with control module 3 in monitor base 1's the mounting groove, control module 3's magnetism inhales the slide rail groove clearance fit in sliding door 4 and the mounting groove in monitor base 1, be equipped with wind energy module 5 on monitor base 1, wind energy module 5's wind energy fixed base 6 is fixed at monitor base 1 upside, wind energy module 5 next door is equipped with light energy module 7, light energy fixed base 8 of light energy module 7 fixes on monitor base 1.
The magnetic suction sliding door 4 of the control module 3 is provided with a transparent glass window 9, so that a user can observe the condition of the control module 3 conveniently, the magnetic suction sliding door 4 is provided with a moving groove, the user can move conveniently, and the magnetic suction sliding door 4 is fixed in a magnetic suction mode.
A charging controller 10 of the control module 3 is fixed in a mounting groove of the monitor base 1, an LED display screen, control keys and an indicator lamp are arranged on the charging controller 10, a storage battery 11 is arranged beside the monitor base 1, and an inverter 12 is arranged beside the storage battery 11.
A lifting cylinder 13 is arranged on a wind energy fixing base 6 of the wind energy module 5, and a reinforcing rod is arranged between a fixing seat of the lifting cylinder 13 and the wind energy fixing base 6 to be connected.
A rotary tray 14 is arranged on a telescopic seat of the lifting cylinder 13, an installation seat 15 is arranged on the rotary tray 14, a rotary fan sheet 16 is arranged on the installation seat 15, and a tail vane 17 is arranged at the other end of the installation seat 15.
An assembly rod 18 is arranged on the light energy fixing base 8 of the light energy module 7, a reinforcing rod is arranged between the assembly rod 18 and the light energy fixing base 8, a control box support 19 is arranged on the assembly rod 18, and a control box 20 is arranged on the control box support 19.
Be equipped with big motor support 21 on the assembly pole 18, be equipped with the rotating electrical machines 22 in the big motor support 21, be equipped with on the rotating electrical machines 22 and rotate tray 23, rotate and be equipped with on the tray 23 and force centralizer, GNSS antenna and communication module, be equipped with protecting crust 24 on the rotation tray 23, protecting crust 24 can effectively avoid forcing centralizer, GNSS antenna and communication module impaired, is equipped with visual window on the protecting crust 24.
Be equipped with photovoltaic board support 25 on the rotation tray 23, photovoltaic board support 25 inboard is equipped with photovoltaic board 26, and photovoltaic board 26 passes through the rotation jogged joint of dwang with photovoltaic board support 25, and the photovoltaic board support 25 outside is equipped with accommodate motor 27, accommodate motor 27 and photovoltaic board 26's dwang power connection.
Example one
In the first embodiment, referring to fig. 1-6, ventilation holes 2 are formed on both sides of a monitor base 1, the cross section of each ventilation hole 2 is a parallelogram, heat dissipation of equipment is ensured, and meanwhile, equipment is prevented from being soaked in water, a mounting groove is formed in the monitor base 1, a control module 3 is arranged in the mounting groove of the monitor base 1, a magnetic sliding door 4 of the control module 3 is in clearance fit with a slide rail groove in the mounting groove of the monitor base 1, a transparent glass window 9 is formed on the magnetic sliding door 4 of the control module 3, so that a user can observe the condition of the control module 3, a moving groove is formed on the magnetic sliding door 4, so that the user can move conveniently, a charging controller 10 of the control module 3 is fixed by magnetic attraction, a charging controller 10 of the control module 3 is fixed in the mounting groove of the monitor base 1, an LED display screen, a control button and an indicator light are arranged on the charging controller 10, a storage battery 11 is arranged beside the monitor base 1, an inverter 12 is arranged beside the storage battery 11, a wind energy module 5 is arranged on the monitor base 1, a wind energy fixing base 6 of the wind energy module 5 is fixed on the upper side of the monitor base 1, a light energy fixing support 14 is arranged on the monitor base 6, and a light energy fixing rod fixing support 15 is arranged beside a light energy fixing support 7, a light energy fixing support 7 is arranged on the monitor base 7, a light energy fixing support base 7 is arranged on the monitor base, and a light energy fixing support 7, be equipped with control box 20 on control box support 19, be equipped with big motor support 21 on the assembly pole 18, be equipped with rotating electrical machines 22 in the big motor support 21, be equipped with on the rotating electrical machines 22 and rotate tray 23, be equipped with on rotating tray 23 and force the centralizer, GNSS antenna and communication module, be equipped with protecting crust 24 on rotating tray 23, protecting crust 24 can effectively avoid forcing the centralizer, GNSS antenna and communication module are impaired, be equipped with visual window on the protecting crust 24, be convenient for the user to observe the equipment condition, be equipped with photovoltaic board support 25 on rotating tray 23, photovoltaic board support 25 inboard is equipped with photovoltaic board 26, photovoltaic board 26 passes through the dwang and is connected with the rotation hole of photovoltaic board support 25, the photovoltaic board support 25 outside is equipped with accommodate motor 27, accommodate motor 27 is connected with photovoltaic board 26's dwang power.
Example two
In the second embodiment, referring to fig. 1-6, in use, the rotating motor 22 of the optical energy module 7 rotates according to the sunlight angle, the rotating motor 22 drives the rotating tray 23 to rotate, so as to drive the photovoltaic panel 26 on the photovoltaic panel support 25 to rotate, and then the adjusting motor 27 rotates, so as to drive the rotating rod of the photovoltaic panel 26 to rotate, so as to adjust the elevation angle of the photovoltaic panel 26, thereby improving the light utilization rate, the rotating fan blade 16 of the wind energy module 5 can generate power effectively under the driving of wind power, when the wind direction changes, the tail vane 17 can drive the rotating tray 14 on the lower side of the mounting seat 15 to rotate, thereby changing the orientation of the rotating fan blade 16, when the weather is poor, the lifting cylinder 13 of the device contracts, thereby lowering the center of gravity of the wind energy module 5, thereby avoiding the device from being damaged, the output end of the charging controller 10 is respectively connected with the storage battery 11 and the control box 20, the control box 20 is respectively connected with the GNSS antenna and the communication module, and the control box 20 controls the GNSS antenna and the communication module to send monitored data back to the server.
About implementing the utility model discloses a beneficial technical effect does: because the light energy module of this equipment is equipped with the rotating electrical machines, when daily work, can improve the light utilization ratio according to the angle of sunshine angle modulation photovoltaic board, and this equipment is equipped with the wind energy module, when rainy day, can continue to provide the energy for equipment, so the unable normal problem of working of monitor under the not enough or wind-force not enough condition of illumination is solved effectively to this equipment.
The present invention is not limited to the above preferred embodiments, and any modifications, equivalent replacements, and improvements made within the spirit and principle of the present invention should be included within the protection scope of the present invention.

Claims (8)

1. The utility model provides a wind optical system monitor, its characterized in that, includes monitor base (1), monitor base (1) both sides are equipped with ventilation hole (2), the cross section in ventilation hole (2) is parallelogram, monitor base (1) inside is equipped with the mounting groove, be equipped with control module (3) in the mounting groove of monitor base (1), the magnetism of control module (3) inhale push-and-pull door (4) with slide rail groove clearance fit in the mounting groove in monitor base (1), be equipped with wind energy module (5) on monitor base (1), wind energy fixed baseplate (6) of wind energy module (5) are fixed monitor base (1) upside, wind energy module (5) next door is equipped with light energy module (7), light energy fixed baseplate (8) of light energy module (7) are fixed on monitor base (1).
2. The wind and solar system monitor according to claim 1, wherein the magnetically attracted sliding door (4) of the control module (3) is provided with a transparent glass window (9), the magnetically attracted sliding door (4) is provided with a moving groove, and the magnetically attracted sliding door (4) is fixed in a magnetic attraction manner.
3. The wind-solar system monitor according to claim 2, wherein the charge controller (10) of the control module (3) is fixed in a mounting groove of the monitor base (1), the charge controller (10) is provided with an LED display screen, a control button and an indicator light, a storage battery (11) is arranged beside the monitor base (1), and an inverter (12) is arranged beside the storage battery (11).
4. The wind-solar system monitor according to claim 1, wherein the wind energy fixing base (6) of the wind energy module (5) is provided with a lifting cylinder (13), and a reinforcing rod is arranged between a fixing seat of the lifting cylinder (13) and the wind energy fixing base (6) for connection.
5. The wind-solar system monitor according to claim 4, wherein the telescopic base of the lifting cylinder (13) is provided with a rotary tray (14), the rotary tray (14) is provided with a mounting base (15), the mounting base (15) is provided with a rotary fan blade (16), and the other end of the mounting base (15) is provided with a tail vane (17).
6. The wind-solar system monitor according to claim 1, wherein the light energy fixing base (8) of the light energy module (7) is provided with an assembling rod (18), a reinforcing rod is arranged between the assembling rod (18) and the light energy fixing base (8), the assembling rod (18) is provided with a control box bracket (19), and the control box bracket (19) is provided with a control box (20).
7. The wind-solar system monitor according to claim 6, wherein the assembly rod (18) is provided with a large motor support (21), the large motor support (21) is internally provided with a rotating motor (22), the rotating motor (22) is provided with a rotating tray (23), the rotating tray (23) is provided with a forced centering device, a GNSS antenna and a communication module, the rotating tray (23) is provided with a protective shell (24), and the protective shell (24) is provided with a visible window.
8. The wind-solar system monitor according to claim 7, wherein a photovoltaic panel support (25) is arranged on the rotating tray (23), a photovoltaic panel (26) is arranged on the inner side of the photovoltaic panel support (25), the photovoltaic panel (26) is connected with the rotating hole of the photovoltaic panel support (25) through a rotating rod, an adjusting motor (27) is arranged on the outer side of the photovoltaic panel support (25), and the adjusting motor (27) is in power connection with the rotating rod of the photovoltaic panel (26).
CN202222135862.8U 2022-08-15 2022-08-15 Wind-solar system monitor Active CN217845158U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222135862.8U CN217845158U (en) 2022-08-15 2022-08-15 Wind-solar system monitor

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222135862.8U CN217845158U (en) 2022-08-15 2022-08-15 Wind-solar system monitor

Publications (1)

Publication Number Publication Date
CN217845158U true CN217845158U (en) 2022-11-18

Family

ID=84014869

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222135862.8U Active CN217845158U (en) 2022-08-15 2022-08-15 Wind-solar system monitor

Country Status (1)

Country Link
CN (1) CN217845158U (en)

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